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Synthesis of photoluminescent β-Ga_2O_3 nanostructures using electrospinning method, and control of length-diameter ratio by calcination heating rates

机译:电纺法合成光致发光β-Ga_2O_3纳米结构,并通过煅烧升温速率控制长径比

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摘要

Nanofiber precursors of PVP-Ga(NO3)(3) were synthesized through the electrospinning technique, and monoclinic beta-Ga2O3 patterns were later obtained through the calcination method. During the annealing process, the nanofibers' pores decreased, and their lengths were uniform up to several micrometers due to the surface-to-core extension that comprises the crystallization through Ostwald ripening process. Synthesis on the structure and morphology of materials were investigated using scanning and transmission electron microscopy equipped with an energy dispersive spectrometer, X-ray diffraction, Raman and Fourier-transform infrared (FTIR) spectroscopies. The beta-Ga2O3 optical properties disclosed very broad and intense photoluminescence emission spectrum in the blue region of the wavelength, whose driving force was the presence of oxygen vacancies in the structures. Two types of Ga3+ ions (GaO6 octahedral and GaO4 tetrahedral chains) were demonstrated to come from different vibrations of Ga-O bonds in the Raman and FTIR spectra. And Ga3+-CO adducts formed on coordinatively Ga3+ ion located at edges and corners of beta-Ga2O3 crystallites. Thus, successful results of this work included the control of length-diameter ratio by calcination heating rates, as well as the broad blue emission band, representing a strong potential of beta-Ga2O3 materials in optoelectronic applications.
机译:通过电纺丝技术合成了PVP-Ga(NO3)(3)的纳米纤维前体,随后通过煅烧方法获得了单斜晶的β-Ga2O3模式。在退火过程中,由于包括通过奥斯特瓦尔德熟化过程进行结晶的表面到核心的延伸,纳米纤维的孔减少了,并且它们的长度均匀到几微米。使用配备有能量色散光谱仪,X射线衍射,拉曼光谱和傅立叶变换红外(FTIR)光谱的扫描和透射电子显微镜,研究了材料的结构和形态的合成。 β-Ga2O3的光学性质在该波长的蓝色区域显示了非常宽而强烈的光致发光发射光谱,其驱动力是结构中存在氧空位。两种类型的Ga3 +离子(GaO6八面体和GaO4四面体链)被证明来自拉曼光谱和FTIR光谱中Ga-O键的不同振动。 Ga3 + -CO加合物形成在位于β-Ga2O3晶体边缘和角落的Ga3 +离子上。因此,这项工作的成功成果包括通过煅烧加热速率控制长径比以及宽广的蓝色发射带,这代表了β-Ga2O3材料在光电应用中的强大潜力。

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  • 来源
    《Journal of materials science》 |2019年第18期|16910-16916|共7页
  • 作者单位

    UNESP Univ Dept Phys Chem Rua Prof Francisco Degni 55 BR-14800060 Araraquara SP Brazil;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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